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Design and calibration of an elliptical crystal spectrometer for the diagnosis of proton-induced x-ray emission(PIXE)

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【作者】 方言律李东彧程浩高原申泽清杨童李昱泽夏亚东晏炀颜莎林晨颜学庆

【Author】 Yanlyu Fang;Dongyu Li;Hao Cheng;Yuan Gao;Ze-Qing Shen;Tong Yang;Yu-Ze Li;Ya-Dong Xia;Yang Yan;Sha Yan;Chen Lin;Xue-Qing Yan;State Key Laboratory of Nuclear Physics and Technology and CAPT, Peking University;Beijing Laser Acceleration Innovation Center;Institute of Guangdong Laser Plasma Technology;

【通讯作者】 林晨;

【机构】 State Key Laboratory of Nuclear Physics and Technology and CAPT, Peking UniversityBeijing Laser Acceleration Innovation CenterInstitute of Guangdong Laser Plasma Technology

【摘要】 Laser-driven proton-induced x-ray emission(laser-PIXE) is a nuclear analysis method based on the compact laser ion accelerator. Due to the transient process of ion acceleration, the laser-PIXE signals are usually spurted within nanoseconds and accompanied by strong electromagnetic pulses(EMP), so traditional multi-channel detectors are no longer applicable.In this work, we designed a reflective elliptical crystal spectrometer for the diagnosis of laser-PIXE. The device can detect the energy range of 1 keV–11 ke V with a high resolution. A calibration experiment was completed on the electrostatic accelerator of Peking University using samples of Al, Ti, Cu, and ceramic artifacts. The detection efficiency of the elliptical crystal spectrometer was obtained in the order of 10-9.

【Abstract】 Laser-driven proton-induced x-ray emission(laser-PIXE) is a nuclear analysis method based on the compact laser ion accelerator. Due to the transient process of ion acceleration, the laser-PIXE signals are usually spurted within nanoseconds and accompanied by strong electromagnetic pulses(EMP), so traditional multi-channel detectors are no longer applicable.In this work, we designed a reflective elliptical crystal spectrometer for the diagnosis of laser-PIXE. The device can detect the energy range of 1 keV–11 ke V with a high resolution. A calibration experiment was completed on the electrostatic accelerator of Peking University using samples of Al, Ti, Cu, and ceramic artifacts. The detection efficiency of the elliptical crystal spectrometer was obtained in the order of 10-9.

【基金】 Project supported by the National Natural Science Foundation of China (Grant Nos. 11975037 and 11921006);the National Grand Instrument Project of China (Grant Nos. 2019YFF01014400 and 2019YFF01014404)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2023年11期
  • 【分类号】O434.1
  • 【下载频次】3
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